[1] 朱桂萍,王树民. 电能质量控制技术综述. 电力系统自动化,2002,26(19):28-31
[2] Guiping Zhu, Zanji Wang etc. Transient Behavior Research on the Combined Equipment of SMES-SFCL. IEEE Trans. on Applied Superconductivity, 2004, 14(2): 778-781(SCI收录,IDS Number:844HA;Ei:04378348942 )
[3] Guiping Zhu, Zanji Wang and Guoqiang Zhang. Research on a Combined Device SMES-SFCL based on Multi-Object Optimization. IEEE Trans. on Applied Superconductivity, 2005, 15(2): 2019-2022(SCI收录,IDS Number:935FS; Ei:05299228416)
[4] 朱桂萍,王赞基. 新型SMES-SFCL多功能组合装置. 电力系统自动化,2005,29(13):45-48
[5] Guiping Zhu, Ming Song, Zanji Wang, Shaotao Dai. Design of LTS Coil Used for the Combined Device of SMES-SFCL. IEEE Trans. on Applied Superconductivity, 2006, 16(2):674-677(SCI收录,IDS Number:144NW;Ei:063210047726)
[6] Guiping Zhu, Zanji Wang, Xiaohua Jiang. Design and Research on a Multi-Functional Combined Device Incorporating a SMES. IEEE Trans. on Applied Superconductivity, 2007, 17(2):2018-2021(SCI收录,IDS Number:195WI;Ei:073110740750)
[7] 万庆祝,朱桂萍,陈建业等. 平衡单相牵引负荷补偿容量优化设计. 电力系统自动化. 2008,32(8):93-97(Ei:082111273229)
[8] Zhu Guiping,Chen Jianye, Liu Xiaoyu. Compensation for the negative-sequence currents of electric railway based on SVC. Industrial Electronics and Applications, 2008, ICIEA2008, 3rd IEEE Conference on, Singapore, June3-5: 1958-1963 (EI:083911591332)
[9] 陈达威,朱桂萍. 低压微电网中的功率传输特性.电工技术学报,2010,25(7):117-122+143(EI: 20103413174464)
[10] 陈达威,朱桂萍. 微电网负荷优化分配. 电力系统自动化,2010,34(20):45-49(EI: 20104713409060)
[11] 姚勇,朱桂萍,刘秀成. 谐波对低压微电网运行的影响. 中国电力,2010,43(10):11-14
[12] 闫朝阳,朱桂萍. PWM控制算法对大功率变换器损耗的影响研究. 电力电子技术,2010,44(12):41-43
[13] 朱桂萍,汪芙平,陈建业. 水冷式大功率电力电子器件的热电混合仿真. 2010全国电工新技术论坛.
[14] Wang Ke,Zhu Guiping. Research on Control Method of Two Single-Phase B2B STATCOM in Traction System. 2010 China International Conference on Electricity Distribution(CICED 2010), Nanjing, Jiangsu, China, September 13-17 (EI:20111713931828)
[15] 王振华,朱桂萍. 并网状态下微电源出力优化算法研究. 中国电力,2012,45(1):55-58
[16] 姚勇,朱桂萍. 电池储能系统在改善微电网电能质量中的应用. 电工技术学报,2012,27(1):85-89 (EI:20120914812503)
[17] Zhu Guiping, Lu Zongxiang. Research of Impacts on Power Systems by Electric Vehicle Charging in China. International Conference on Energy and Environmental Protection, June 23-24, 2012, Hohhot, Inner Mongolia, China. Advanced Materials Research, Renewable and Sustainable Energy II, V512-515: 2643-2649,(EI:20122315084950)
[18] Zhao Hong, Zhu Guiping. A novel frequency control strategy of micro-source based in the secondary frequency regulation of power system. The 5th China International Conference on Electricity Distribution (CICED) 2012, September 5-6, Shanghai, China. (EI: 20132216365272)
[19] Xing Yuhui, Zhu Guiping. Research on Electric Vehicle Charging Power Forecasting based on statistical model. The 5th China International Conference on Electricity Distribution (CICED) 2012, September 5-6, Shanghai, China. (EI: 13500274)
[20] Yan Zhaoyang. Zhu Guiping. Voltage ripple across the capacitor in DC side of shunt APF. IEEE conference of power system technology(POWERCON 2012), Auckland, New Zealand, Oct.28 ~ Nov.2, 2012 (EI: 20130616003376)
[21] 熊威明, 朱桂萍. 可再生能源经济决策支持工具IRPP的构建及分析案例. 可再生能源,31(4),2013: 65-70
[22] Li Yuanxi, Zhu Guiping. Prediction on Power Energy Mix of China Based on Neural Network Model. IEEE Power Energy Society General Meeting 2013, July 21-25, Vancouver, Canada. (EI:13932919).
[23] Zhu Guiping, Xing Yuhui. Electric Vehicle Charging Strategy in Metropolises in China. IEEE Power Energy Society General Meeting 2013, July 21-25, Vancouver, Canada. (EI: 20140617271722)
[24] Xing Yuhui, Zhu Guiping. Power control of microgrid with rich small hydropower stations. 2014 International Conference on Energy Research and Power Engineering, ERPE 2014, May 17-18, 2014, Dalian, China: 412-418 (EI:20143418085887)
[25] Zhu Guiping, Dui Xiaowei. Reactive compensation research of HVAC cables for offshore wind farms. 2014 International Conference on Energy Research and Power Engineering, ERPE 2014, May 17-18, 2014, Dalian, China: 433-438
[26] Zhu Guiping, Xia Mingchao, Wang Siyu. Hybrid Power Supply System of Rail Transit Based on On-board Energy Storage Equipment. 2014 International conference on Power System Technology (PowerCon 2014), Oct. 20-22, Chengdu, Sichuan, China. (EI: 20151200671632)
[27] Chen Zhang, Guiping Zhu. Regional Autonomy Control of EV Charging with PV/ES Systems in Active Distribution Network. IEEE PES Asia-Pacific Power and Energy Engineering Conference 2015 (IEEE PES APPEEC 2015), Nov. 15-18th, 2015, Brisbane, Australia
[28] Zhu Guiping, Dui Xiaowei, Zhang Chen. Optimization of reactive power compensation of HVAC cable in off-shore wind power plant. IET Renewable Power Generation, Vol.9, No.7, Sep. 2015: 857-863 (EI: 20153401198455)(SCI: 000360304500017)
[29] Huang Limiao,Zhu Guiping. Analysis of the Control Strategies of Parallel Active Power Filter. Asia Conference on Power and Electrical Engineering, ACPEE 2016, March 20-22, 2016, Bangkok, Thailand (EI: 20162102419803)
[30] 兑潇玮, 朱桂萍. 考虑预测误差的风电场储能配置优化方法. 电网技术.Vol.41, No.2, 2017年2月:434-439. (EI: 20171703605358)
[31] Xiaowei Dui, Guiping Zhu. Optimal unit commitment based on second order cone programming in high wind power penetration scenarios. IET Renewable Power Generation, Vol.12, No.1, Jan. 2018: 52-60(SCI: 17466792)
[32] Xiaowei Dui, Guiping Zhu, Liangzhong Yao. Two-stage optimization of battery energy storage capacity to decrease wind power curtailment in grid-connected wind farms. IEEE Trans. on Power Systems. Vol.33, No.3, May 2018:3296-3305 (SCI: 17716432)
[33] Xiaowei Dui, Masakazu Ito , Yu Fujimoto, Yasuhiro Hayashi, Guiping Zhu.Time Series Model of Wind Power Forecasting Error by using Beta Distribution for Optimal Sizing of Battery Storage. IEEJ Transactions on Power and Energy, Vol. 139, No.3
[34] 邬超,朱桂萍,钱敏慧. 基于信息熵的历史数据选取对超短期风电功率预测精度影响研究. 电网技术,Vol.45, No.5, 2021年5月:1767-1772